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首页> 外文期刊>Electric Power Components and Systems >Radial Force Analytic Modeling for a Novel Bearingless Switched Reluctance Motor When Considering Rotor Eccentricity
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Radial Force Analytic Modeling for a Novel Bearingless Switched Reluctance Motor When Considering Rotor Eccentricity

机译:考虑转子偏心的新型无轴承开关磁阻电机的径向力解析模型

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摘要

Analytic modeling of radial forces is proposed tor the novel bearingless switched reluctance motor, where the rotor eccentricity is taken into account. The novel bearingless switched reluctance motor's model is never disclosed, even though there are many advantages, such as fewer suspension windings and simpler control circuit and algorithm, when compared to the conventional bearingless switched reluctance motor. The analytic model of radial forces is very important to achieve this new bearingless switched reluctance motor's suspension control. The rotor eccentricity is a key cause to affect the radial forces. This article calculates the air-gap permeances through considering rotor eccentricity. The self-inductance and mutual-inductance expressions of the motor torque windings and the suspension windings are derived by using the magnetic equivalent circuit method. The derived radial force model discloses the effects of winding currents, rotor position angle, and rotor eccentricity displacement. The finite-element analysis based results verify the built model.
机译:针对新型无轴承开关磁阻电机,提出了径向力的解析模型,其中考虑了转子偏心率。与传统的无轴承开关磁阻电动机相比,即使具有许多优点,例如更少的悬架绕组以及更简单的控制电路和算法,也从未公开过新型无轴承开关磁阻电动机的模型。径向力的解析模型对于实现这种新型无轴承开关磁阻电机的悬架控制非常重要。转子偏心是影响径向力的关键原因。本文通过考虑转子偏心率来计算气隙磁导率。电机转矩绕组和悬架绕组的自感和互感表达式是通过磁等效电路法得出的。导出的径向力模型公开了绕组电流,转子位置角和转子偏心距位移的影响。基于有限元分析的结果验证了构建的模型。

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